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Scopus YÖKSİS DOI Eşleşti SJR Q3

HORIZONTAL SINUSOIDAL WAVY FORM PLATE-FIN HEAT SINKS FOR NATURAL CONVECTION HEAT DISSIPATION

Heat Transfer Research · Ocak 2024

Özet
The plate-fin heat sink geometry was modified to have the fin form sinusoidal wave shape in the horizontal direction with twelve variations by amplitude and period changes. Three different wave periods and four different wave amplitudes were used. The purpose was to alter natural convection motion in favor of heat transfer effectiveness. The main performance indicator was the base-plate average temperature. The independent geometric parameters were experimentally examined in terms of the effectiveness of natural convection heat transfer by the measured average temperature values. Heat transfer by radiation was calculated by an analytical algebraic approach in order to obtain the Nusselt number solely based on convective heat transfer. Eight different heat inputs were used for each tested geometry to change the Grashof and Rayleigh numbers in a laminar flow interval. As reference geometries, a flat plate and a heat sink with straight/flat-plate fins were utilized. The heat sinks were also oriented to three different angles by a test stand. Accordingly, thirty six unique experimental cases were examined as a result of 327 trials and 1100 hours of testing. It was realized that the wavy fin geometry enhances natural convection heat transfer compared to the baseplate and flat-plate-fin heat sinks. However, increasing period and amplitude of the wave form more than initial values deteriorated the gains by the modifications on the fins. Since a single-period, 2-mm-amplitude heat sink resulted in the highest Nusselt number for all orientations, an optimum may be sought about this setting. As a general evaluation, computational simulations for spatial resolution of the event physics and dimensional optimization are standing as future study targets.
2 atıf Ocak 2024 DOI
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YÖKSİS Kayıtları
Horizontal sinusoidal wavy form plate fin heat sinks for natural convection heat dissipation
Heat Transfer Research · 2024 SCI-Expanded
Dr. Öğr. Üyesi EYÜB CANLI →
YÖKSİS Kayıtları — ISSN Eşleşmesi
Bu dergide (ISSN eşleşmesi) kurumun 6 kaydı bulundu.
DETERMINATION OF THERMO-PHYSICAL PROPERTIES OF ZEOLITE NANOFLUID
2018 ISSN: 1064-2285 SCI-Expanded
Prof. Dr. AHMET ALİ SERTKAYA →
The Effects of Sinusoidal Strip Element with Different Amplitudes on Heat Transfer and Flow Characteristics of Circular Channels
2019 ISSN: 1064-2285 SCI-Expanded
Prof. Dr. ADNAN BERBER →
EFFECTS OF SINUSOIDAL STRIP ELEMENT WITH DIFFERENT AMPLITUDES ON HEAT TRANSFER AND FLOW CHARACTERISTICS OF CIRCULAR CHANNELS
2019 ISSN: 1064-2285 SCI-Expanded Q2
Prof. Dr. ADNAN BERBER →
Horizontal sinusoidal wavy form plate fin heat sinks for natural convection heat dissipation
2024 ISSN: 1064-2285 SCI-Expanded Q3
Dr. Öğr. Üyesi EYÜB CANLI →
EXPERIMENTAL INVESTIGATION OF LOW HEAT FLUX WICKED HEAT PIPES PERFORMANCE WITH DIFFERENT WORKING FLUIDS AND TILT ANGLES
2024 ISSN: 1064-2285 SCI-Expanded Q3
Prof. Dr. AHMET ALİ SERTKAYA →
EXPERIMENTAL INVESTIGATION OF LOW HEAT FLUX WICKED HEAT PIPES PERFORMANCE WITH DIFFERENT WORKING FLUIDS AND TILT ANGLES
2025 ISSN: 1064-2285 SCI-Expanded
Prof. Dr. AHMET ALİ SERTKAYA →

Makale Bilgileri

Toplam Atıf 2 atıf · Scopus
ISSN10642285
Yayın TarihiOcak 2024
Cilt / Sayfa55 · 67-96

Kurumlar

Kocaeli Üniversitesi
İzmit Turkey
Selçuk Üniversitesi
Selçuklu Turkey

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Scimago Dergi (ISSN Eşleşmesi)
Heat Transfer Research
Q3
SJR Skoru0,338
H-Index37
YayıncıBegell House Inc.
ÜlkeUnited States
Condensed Matter Physics (Q3)
Fluid Flow and Transfer Processes (Q3)
Mechanical Engineering (Q3)
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